Bioethanol from hydrolyzed Spirulina (Arthrospira platensis) biomass using ethanologenic bacteria

被引:10
|
作者
Werlang, Eliana B. [1 ]
Julich, Jennifer [2 ]
Muller, Maria V. G. [1 ]
Neves, Fabio de Farias [3 ]
Sierra-Ibarra, Estefania [4 ]
Martinez, Alfredo [4 ]
Schneider, Rosana de C. de S. [1 ,2 ]
机构
[1] Univ Santa Cruz do Sul UNISC, Environm Technol Postgrad Program, Av Independencia 2293, BR-96815900 Santa Cruz Do Sul, RS, Brazil
[2] Univ Santa Cruz do Sul UNISC, Ctr Excellence Oilchem & Biotechnol, Reg Sci & Technol Pk UNISC,Av Independencia 2293, BR-96815900 Santa Cruz Do Sul, RS, Brazil
[3] Santa Catarina State Univ UDESC, Dept Fisheries Engn, Rua Cel Fernandes Martins 270, BR-88790000 Laguna, SC, Brazil
[4] Univ Nacl Autonoma Mexico, Dept Ingn Celular & Biocatalisis, Inst Biotecnol, Av Univ 2001, Cuernavaca 62210, Morelos, Mexico
关键词
A; platensis; Enzymatic saccharification; Escherichia coli; Bioethanol; Biomass; ENZYMATIC SACCHARIFICATION; THERMOCHEMICAL HYDROLYSIS; CELL DISRUPTION; MICROALGAE; FERMENTATION; BIOFUELS; CULTIVATION; PRETREATMENT; EXTRACTION; FEEDSTOCK;
D O I
10.1186/s40643-020-00315-9
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Photosynthetic microorganisms are considered excellent feedstock for biofuel production in developing biomass production technologies. A study was conducted to evaluate ethanol production with the sequential enzymatic saccharification and fermentation of Arthrospira platensis (Spirulina) biomass with the metabolically engineered Escherichia coli strain MS04. A. platensis was cultivated semicontinuously in an open raceway pond, and the carbohydrate content was determined to be as high as 40%. The enzymatic saccharification was designed to release the maximum amount of glucose. After 40 h of enzymatic saccharification, 27 g L-1 of monosaccharides was obtained. These slurries were fermented with ethanologenic bacteria, achieving 12.7 g L-1 ethanol after 9 h of fermentation, which corresponds to 92% conversion yield of the glucose content in the hydrolysate, 0.13 g of ethanol per 1 g of Spirulina biomass and a volumetric productivity of 1.4 g of ethanol L-1 h(-1). Therefore, we conclude that it is possible, in a short time, to obtain a high ethanol yield corresponding to 160 L per ton of dry biomass with a high productivity.
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页数:9
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